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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleAdult Brain

Neuroimaging-Based Classification Algorithm for Predicting 1p/19q-Codeletion Status in IDH-Mutant Lower Grade Gliomas

P.P. Batchala, T.J.E. Muttikkal, J.H. Donahue, J.T. Patrie, D. Schiff, C.E. Fadul, E.K. Mrachek, M.-B. Lopes, R. Jain and S.H. Patel
American Journal of Neuroradiology March 2019, 40 (3) 426-432; DOI: https://doi.org/10.3174/ajnr.A5957
P.P. Batchala
aFrom the Department of Radiology and Medical Imaging (P.P.B., T.J.E.M., J.H.D., S.H.P.)
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T.J.E. Muttikkal
aFrom the Department of Radiology and Medical Imaging (P.P.B., T.J.E.M., J.H.D., S.H.P.)
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J.H. Donahue
aFrom the Department of Radiology and Medical Imaging (P.P.B., T.J.E.M., J.H.D., S.H.P.)
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J.T. Patrie
bDepartment of Public Health Sciences (J.T.P.)
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D. Schiff
cDivision of Neuro-Oncology (D.S., C.E.F.)
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C.E. Fadul
cDivision of Neuro-Oncology (D.S., C.E.F.)
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E.K. Mrachek
dDepartment of Pathology (E.K.M., M.-B.L.), Divisions of Neuropathology and Molecular Diagnostics, University of Virginia Health System, Charlottesville, Virginia
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M.-B. Lopes
dDepartment of Pathology (E.K.M., M.-B.L.), Divisions of Neuropathology and Molecular Diagnostics, University of Virginia Health System, Charlottesville, Virginia
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R. Jain
eDepartments of Radiology (R.J.)
fNeurosurgery (R.J.), New York University School of Medicine, New York, New York.
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S.H. Patel
aFrom the Department of Radiology and Medical Imaging (P.P.B., T.J.E.M., J.H.D., S.H.P.)
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Abstract

BACKGROUND AND PURPOSE: Isocitrate dehydrogenase (IDH)-mutant lower grade gliomas are classified as oligodendrogliomas or diffuse astrocytomas based on 1p/19q-codeletion status. We aimed to test and validate neuroradiologists' performances in predicting the codeletion status of IDH-mutant lower grade gliomas based on simple neuroimaging metrics.

MATERIALS AND METHODS: One hundred two IDH-mutant lower grade gliomas with preoperative MR imaging and known 1p/19q status from The Cancer Genome Atlas composed a training dataset. Two neuroradiologists in consensus analyzed the training dataset for various imaging features: tumor texture, margins, cortical infiltration, T2-FLAIR mismatch, tumor cyst, T2* susceptibility, hydrocephalus, midline shift, maximum dimension, primary lobe, necrosis, enhancement, edema, and gliomatosis. Statistical analysis of the training data produced a multivariate classification model for codeletion prediction based on a subset of MR imaging features and patient age. To validate the classification model, 2 different independent neuroradiologists analyzed a separate cohort of 106 institutional IDH-mutant lower grade gliomas.

RESULTS: Training dataset analysis produced a 2-step classification algorithm with 86.3% codeletion prediction accuracy, based on the following: 1) the presence of the T2-FLAIR mismatch sign, which was 100% predictive of noncodeleted lower grade gliomas, (n = 21); and 2) a logistic regression model based on texture, patient age, T2* susceptibility, primary lobe, and hydrocephalus. Independent validation of the classification algorithm rendered codeletion prediction accuracies of 81.1% and 79.2% in 2 independent readers. The metrics used in the algorithm were associated with moderate-substantial interreader agreement (κ = 0.56–0.79).

CONCLUSIONS: We have validated a classification algorithm based on simple, reproducible neuroimaging metrics and patient age that demonstrates a moderate prediction accuracy of 1p/19q-codeletion status among IDH-mutant lower grade gliomas.

ABBREVIATIONS:

IDH
isocitrate dehydrogenase
IDHmut-Codel
1p/19q-codeleted IDH-mutant LGGs, oligodendrogliomas
IDHmut-Noncodel
noncodeleted IDH-mutant LGGs, astrocytomas
LGG
lower grade glioma
MLR
multivariate logistic regression
PPV
positive predictive value
TCGA
The Cancer Genome Atlas
TCIA
The Cancer Imaging Archive
WHO
World Health Organization
  • © 2019 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 40 (3)
American Journal of Neuroradiology
Vol. 40, Issue 3
1 Mar 2019
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Cite this article
P.P. Batchala, T.J.E. Muttikkal, J.H. Donahue, J.T. Patrie, D. Schiff, C.E. Fadul, E.K. Mrachek, M.-B. Lopes, R. Jain, S.H. Patel
Neuroimaging-Based Classification Algorithm for Predicting 1p/19q-Codeletion Status in IDH-Mutant Lower Grade Gliomas
American Journal of Neuroradiology Mar 2019, 40 (3) 426-432; DOI: 10.3174/ajnr.A5957

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Neuroimaging-Based Classification Algorithm for Predicting 1p/19q-Codeletion Status in IDH-Mutant Lower Grade Gliomas
P.P. Batchala, T.J.E. Muttikkal, J.H. Donahue, J.T. Patrie, D. Schiff, C.E. Fadul, E.K. Mrachek, M.-B. Lopes, R. Jain, S.H. Patel
American Journal of Neuroradiology Mar 2019, 40 (3) 426-432; DOI: 10.3174/ajnr.A5957
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  • Neuro-Oncology and Radiogenomics: Time to Integrate?
  • T2-FLAIR mismatch in isocitrate dehydrogenase mutant astrocytomas: Variability and evolution
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